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Energy Saving SC(B) Amorphous Alloy Dry Type TransformersEnergy Saving SC(B) Amorphous Alloy Dry Type TransformersEnergy Saving SC(B) Amorphous Alloy Dry Type TransformersEnergy Saving SC(B) Amorphous Alloy Dry Type Transformers
Energy Saving SC(B) Amorphous Alloy Dry Type TransformersEnergy Saving SC(B) Amorphous Alloy Dry Type TransformersEnergy Saving SC(B) Amorphous Alloy Dry Type TransformersEnergy Saving SC(B) Amorphous Alloy Dry Type Transformers

Energy Saving SC(B) Amorphous Alloy Dry Type Transformers

Brand: TSTY

Capacity: 30kVA-31500kVA

Voltage: 6kV-35kV

 

Amorphous alloy dry-type transformers utilize a core made of high-performance amorphous alloy material. Their no-load losses and no-load current are significantly reduced compared to traditional silicon steel transformers, resulting in exceptional energy savings. TSTY amorphous alloy transformers, with their remarkable high efficiency, energy efficiency, and sustainability, have become an ideal choice for applications such as big data centers and computing infrastructure.

     Product Features Overview   

1. Significant Energy Savings: The no-load losses of the amorphous alloy core are only approximately 30% of those of silicon steel cores, and are 75% lower than the limit set by the national standard GB/T10228. This significantly reduces operating electricity costs and offers outstanding lifecycle economic benefits.

2. Advanced Technology and Reliable Structure: Utilizing a unique patented semi-encapsulated three-phase, three-column technology, the transformers feature a compact, lightweight design with excellent resistance to high harmonics.

3. Strong Environmental Adaptability: The amorphous alloy core is fully encapsulated with resin and high-temperature silicone, resisting corrosion and debris shedding, further enhancing product durability.

4. Extremely Low Noise: Through optimized magnetic flux density design, improved core and coil structures, and the application of specialized noise-reducing materials and processes, the product's operating noise level is approximately 5-15 decibels lower than the national standard GB/T10088.

5. Excellent Short-Circuit Resistance: The transformer was the first in China to pass sudden short-circuit tests. The compact three-phase, three-leg structure and optimal core and coil clamping design ensure stable operation even under extreme current surges.

6. Low Partial Discharge and Strong Overload Capacity: The coil is vacuum-cast with epoxy resin, resulting in low temperature rise and excellent heat dissipation. It can withstand 150% of the rated load for extended periods of operation under forced air cooling. A built-in intelligent temperature control system provides comprehensive assurance for safe operation.

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